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Removal of Cr6+ ions from water by electrosorption on modified activated carbon fibre felt

机译:在改性活性炭纤维毡上通过电吸附去除水中的Cr6 +离子

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摘要

Electrosorption is a novel desalination technique that has many advantages in the treatment of sewage. However, commercially available activated carbon electrodes for electrosorption commonly have low microporosity, poor moulding performance, and low adsorption and regeneration efficiency. Here, we evaluated a novel adsorbent material, activated carbon fibre felt (ACFF), for electrosorption of chromium ions (Cr6+) in sewage treatment. The ACFF was modified with 20% nitric acid and its modified structure was characterized. The modified ACFF was used as an adsorbing electrode to investigate its desalination effect by electrosorption. Results showed that compared with those of unmodified ACFF, the modified ACFF had more carbonyl and carboxyl groups and the specific surface area, average pore size and micropore volume of the modified ACFF also improved by 32.2%, 2.5% and 23.1%, respectively. The kinetics of Cr6+ adsorption conformed to the pseudo-second-order kinetic equation, and the adsorption isotherm conformed to the Langmuir model. In addition, the regeneration rate of the modified ACFF electrode was more than 94%. In conclusion, the modified ACFF exhibits excellent electrosorption and regeneration performance for Cr6+ removal from water and thus is of great value for promotion in sewage treatment.
机译:电吸附是一种新颖的脱盐技术,在污水处理中具有许多优势。然而,用于电吸附的市售活性炭电极通常具有低的微孔率,差的成型性能以及低的吸附和再生效率。在这里,我们评估了一种新型吸附材料,活性炭纤维毡(ACFF),用于污水处理中对铬离子(Cr 6 + )的电吸附。 ACFF用20%硝酸改性,并对其改性结构进行了表征。改性的ACFF用作吸附电极,以研究其通过电吸附的脱盐效果。结果表明,与未改性的ACFF相比,改性的ACFF具有更多的羰基和羧基,比表面积,平均孔径和微孔体积也分别提高了32.2%,2.5%和23.1%。 Cr 6 + 的吸附动力学符合拟二级动力学方程,吸附等温线符合Langmuir模型。另外,改性ACFF电极的再生率大于94%。综上所述,改性ACFF对水中Cr 6 + 的去除具有优异的电吸附和再生性能,对促进污水处理具有重要的应用价值。

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